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Comparison Between Numerically Simulated and Experimentally Measured Flowfield Quantities Behind a Pulsejet

机译:脉冲喷气背后的数值模拟和实验测量流场数量的比较

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Pulsed combustion is receiving renewed interest as a potential route to higher performance in air breathing propulsion and ground based power generation systems. Pulsejets offer a simple experimental device with which to study unsteady combustion phenomena and validate simulations. Previous computational fluid dynamics (CFD) simulations focused primarily on pulsejet combustion and exhaust processes. This paper describes a new inlet sub-model which simulates the fluidic and mechanical operation of a valved pulsejet head. The governing equations for this sub-model are described. Sub-model validation is provided through comparisons of simulated and experimentally measured reed valve motion, and time averaged inlet mass flow rate. The updated pulsejet simulation, with the inlet sub-model implemented, is validated through comparison with experimentally measured combustion chamber pressure, inlet mass flow rate, operational frequency, and thrust. Additionally, the simulated pulsejet exhaust flowfield, which is dominated by a starting vortex ring, is compared with particle imaging velocimetry (PIV) measurements on the bases of velocity, vorticity, and vortex location. The results show good agreement between simulated and experimental data. The inlet sub-model is shown to be critical for the successful modeling of pulsejet operation. This sub-model correctly predicts both the inlet mass flow rate and its phase relationship with the combustion chamber pressure. As a result, the predicted pulsejet thrust agrees very well with experimental data.
机译:脉冲燃烧正逐渐引起人们的兴趣,作为在空气推进和地面发电系统中实现更高性能的潜在途径。脉冲喷射器提供了一种简单的实验装置,可用于研究不稳定的燃烧现象并验证模拟结果。先前的计算流体动力学(CFD)模拟主要集中在脉冲喷射燃烧和排气过程上。本文介绍了一个新的入口子模型,该子模型可模拟带阀脉冲喷射头的流体和机械操作。描述了该子模型的控制方程。通过比较模拟和实验测量的簧片阀运动以及时间平均进口质量流量,可以提供子模型验证。通过与实验测量的燃烧室压力,进气质量流量,工作频率和推力进行比较,验证了更新的脉冲喷射仿真(已实现进气口子模型)。此外,将以起始涡流环为主的模拟脉冲喷射排气流场与基于速度,涡度和涡流位置的粒子成像测速(PIV)测量结果进行了比较。结果表明模拟和实验数据之间的良好一致性。入口子模型显示出对脉冲喷射操作的成功建模至关重要。该子模型可以正确预测进气口质量流量及其与燃烧室压力的相位关系。结果,预测的脉冲喷射推力与实验数据非常吻合。

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